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Role of spin-orbit coupling in spin-spiral structures in Fe monolayer on W(110): A first-principles noncollinear magnetism study

机译:旋转轨道耦合在W(110)的Fe Monolayer中的旋转螺旋结构中的作用:一种第一原理非可口磁性研究

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The stability of spin-spiral structures in an Fe monolayer on a W(110) substrate is investigated by means of the first-principles film full-potential linearized augmented plane-wave method, and the role of spin-orbit coupling (SOC) on the spin-spiral structures is determined. Our calculations demonstrate that without SOC, the spin-spiral structures are energetically favored over the ferromagnetic (FM) state, but that when the strong SOC at the FeAV(110) interface is introduced, the formation of the spin-spiral structures is suppressed. Thus, the ground state of the system appears to be the FM state-as observed in experiments. D10.1063/1.3070635
机译:通过第一原理薄膜全电位线性化增强平面波方法研究了W(110)基板上的Fe Monolayer中的旋转螺旋结构的稳定性,以及旋转轨道耦合(SOC)的作用确定旋转螺旋结构。我们的计算表明,没有SOC,旋转螺旋结构在铁磁性(FM)状态上有机充满青睐,但是当引入FEAV(110)界面处的强SOC时,抑制了旋转螺旋结构的形成。因此,系统的地位似乎是在实验中观察到的FM状态。 D 10.1063 / 1.3070635

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